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Efficient Solid-Phase Synthesis of Peptide-Based Phosphine Ligands:Towards Combinatorial Libraries of Selective Transition Metal Catalysts

机译:肽基膦配体的高效固相合成:面向选择性过渡金属催化剂的组合库

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摘要

A new methodology for the solid-phase synthesis of peptide-based phosphine ligands has been developed.Solid supported peptide scaffolds possessing either primary or secondary amines were synthesised using commercially available Fmoc-protected amino acids and readily available Fmoc-protected amino aldehydes for reductive alkylation,in standard solid-phase peptide synthesis (SPPS).Phosphine moieties were introduced by phosphinomethylation of the free amines as the final solid-phase synthetic step,immediately prior to complexa-tion with palladium(II),thus avoiding tedious protection/deprotection of the phosphine moieties during the synthesis of the ligands.The extensive use of commercial building blocks and standard SPPS makes this methodology well suited for the generation of solid-phase combinatorial libraries of novel ligands.Furthermore,it is possible to generate several different phosphine ligand libraries for every peptide scaffold library synthesised,by functional-ising the scaffold libraries with different phosphine moieties.The synthesised ligands were characterised on solid support by conventional ~(31)P NMR spectroscopy and,cleaved from the support,as their phosphine oxides by HPLC,~1H NMR,~(31)PNMR and high resolution ESMS.Palladium(II) allyl complexes were generated from the resin bound ligands and to demonstrate their catalytic properties,palladium catalysed asymmetric allylic substitution reactions were performed.Good yields and moderate enantioselectivity was obtained for the selected combination of catalysts and substrate,but most importantly the concept of this new methodology was proven.Screening of ligand libraries should afford more selective catalysts.
机译:已开发出一种固相合成基于肽的膦配体的新方法。使用市售的Fmoc保护的氨基酸和易于获得的Fmoc保护的氨基醛合成具有伯胺或仲胺的固体负载肽支架,以进行还原烷基化在标准的固相肽合成(SPPS)中,通过与游离胺进行膦甲基甲基化引入膦部分,作为最终的固相合成步骤,紧接着与钯(II)络合,从而避免了繁琐的保护/去保护商业构建基块和标准SPPS的广泛使用使该方法非常适合于生成新型配体的固相组合文库。此外,还可以生成几个不同的膦配体文库通过功能化支架来合成每个肽支架文库通过常规〜(31)P NMR光谱法在固相载体上对合成的配体进行表征,并通过HPLC,〜1H NMR,〜(31)PNMR从高分辨率中分离出它们的膦氧化物ESMS。从树脂结合的配体上生成钯(II)烯丙基配合物,并证明了其催化性能,进行了钯催化的不对称烯丙基取代反应。选择的催化剂和底物组合获得了良好的收率和中等的对映选择性,但最重要的是证明了这种新方法的概念。配体库的筛选应提供更多选择性的催化剂。

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